Strength of Composite Pressure Insulators for High Voltage Circuit Breakers: An Experimental and Numerical Investigation

Author:

Ferino Jan1,Loi Gabriela2ORCID,Meleddu Andrea1,Aymerich Francesco2ORCID,Mazzarelli Iuri3,Pichini Elisa4

Affiliation:

1. Astarte Strategies s.r.l, Via San Saturnino 7, 09124 Cagliari, Italy

2. Department of Mechanical, Chemical, and Materials Engineering, University of Cagliari, Via Marengo 2, 09123 Cagliari, Italy

3. INAIL—Istituto Nazionale per l’Assicurazione contro gli Infortuni sul Lavoro, ICVR UOT, 20123 Milano, Italy

4. INAIL—Istituto Nazionale per l’Assicurazione contro gli Infortuni sul Lavoro, DIT, 00143 Roma, Italy

Abstract

Glass fiber-reinforced composite cylinders, capable of withstanding internal pressure generated during service, are increasingly utilized as insulators in high voltage circuit breakers. Different testing procedures have been suggested by various standards to assess the pressure resistance of these components. Due to its simplicity and cost-effectiveness, the split-disk testing method is the most widely used for evaluating the hoop strength of pressure cylinders during the development and verification phases. However, the method presents several aspects, such as those related to the influence of specimen geometry and friction, which require further examination since they may impact the outcome of the experimental tests. The investigation, carried out by a combination of experimental testing and finite element analyses, shows that the friction between the specimen and the semi-disks has a noteworthy effect on the hoop load applied to the specimen. Almost constant load distributions along the hoop direction, representative of the real operating conditions in a pressurized cylinder, can be achieved via proper lubrication of the contact surfaces. Furthermore, FE analyses demonstrate that the notch geometry suggested by specific standards (short notch) is not capable of inducing a uniform strain distribution in the notched region. A different notch geometry (long notch) is proposed in the study to attain a more uniform strain field over the reduced area region. The experimental results indicate that the strength measured on the short notch specimens is higher than that determined on the long notch specimens, thus confirming the significant influence of strain distribution on the strength properties measured with the split-disk method.

Publisher

MDPI AG

Reference43 articles.

1. Huang, X., and Tanaka, T. (2021). Polymer Composites for Switchgears. Polymer Composites for Electrical Engineering, Wiley.

2. Bosma, A., Hammarsten, A., and Thomas, R. (2000, January 4–7). High-Voltage Live Tank Circuit-Breakers with Composite Insulators. Proceedings of the PowerCon 2000, 2000 International Conference on Power System Technology, Proceedings (Cat. No.00EX409), Perth, WA, Australia.

3. Peters, S.T. (2011). Composite Filament Winding, ASM International.

4. (2007). Composite Hollow Insulators-Pressurized and Unpressurized Insulators for Use in Electrical Equipment with Rated Voltage Greater than 1000 V—Definitions Test Methods Acceptance Criteria and Design Recommendations (Standard No. IEC Standard 61462).

5. (1980). Regulation of Gas Pressure Containers with Mixed Membranes of Insulating and Metallic Material, Containing Active Parts of Equipment (Standard No. VSR.8.B.1—DM 1.12.1980). (In Italian).

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